Prophase Microtubule Arrays Undergo Flux-like Behavior in Mammalian Cells
- 1 October 2007
- journal article
- Published by American Society for Cell Biology (ASCB) in Molecular Biology of the Cell
- Vol. 18 (10) , 3993-4002
- https://doi.org/10.1091/mbc.e07-05-0420
Abstract
In higher eukaryotic cells, microtubules within metaphase and anaphase spindles undergo poleward flux, the slow, poleward movement of tubulin subunits through the spindle microtubule lattice. Although a number of studies have documented this phenomenon across a wide range of model systems, the possibility of poleward flux before nuclear envelope breakdown (NEB) has not been examined. Using a mammalian cell line expressing photoactivatable green fluorescent protein (GFP)-tubulin, we observe microtubule motion, both toward and away from centrosomes, at a wide range of rates (0.5-4.5 microm/min) in prophase cells. Rapid microtubule motion in both directions is dynein dependent. In contrast, slow microtubule motion, which occurs at rates consistent with metaphase flux, is insensitive to inhibition of dynein but sensitive to perturbation of Eg5 and Kif2a, two proteins with previously documented roles in flux. Our results demonstrate that microtubules in prophase cells are unexpectedly dynamic and that a subpopulation of these microtubules shows motion that is consistent with flux. We propose that the marked reduction in rate and directionality of microtubule motion from prophase to metaphase results from changes in microtubule organization during spindle formation.Keywords
This publication has 43 references indexed in Scilit:
- A new method reveals microtubule minus ends throughout the meiotic spindleThe Journal of cell biology, 2006
- Kinesin 5–independent poleward flux of kinetochore microtubules in PtK1 cellsThe Journal of cell biology, 2006
- Efficient Mitosis in Human Cells Lacking Poleward Microtubule FluxCurrent Biology, 2005
- The bipolar mitotic kinesin Eg5 moves on both microtubules that it crosslinksNature, 2005
- Dynein/dynactin regulate metaphase spindle length by targeting depolymerizing activities to spindle polesThe Journal of cell biology, 2004
- The KinI kinesin Kif2a is required for bipolar spindle assembly through a functional relationship with MCAKThe Journal of cell biology, 2004
- Reorganization of the microtubule array in prophase/prometaphase requires cytoplasmic dynein-dependent microtubule transportThe Journal of cell biology, 2002
- A Photoactivatable GFP for Selective Photolabeling of Proteins and CellsScience, 2002
- A Complex of NuMA and Cytoplasmic Dynein Is Essential for Mitotic Spindle AssemblyCell, 1996
- Taxol-induced microtubule asters in mitotic extracts of Xenopus eggs: requirement for phosphorylated factors and cytoplasmic dynein.The Journal of cell biology, 1991